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首页> 外文期刊>Materials Characterization >On the evolution of secondary hardening carbides during continuous versus isothermal heat treatment of high speed steel HS 6-5-2
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On the evolution of secondary hardening carbides during continuous versus isothermal heat treatment of high speed steel HS 6-5-2

机译:高速钢HS 6-5-2连续与等温热处理过程中二次硬化碳化物的演变

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The continuous heat treatment of high speed steels reduces the process times from several hours to a few minutes. The resulting cost savings as well as lower decarburisation and distortion make the continuous heat treatment favourable over an isothermal heat treatment. However, the microstructure-property relationship during continuous heat treatments is far from being well understood. In order to identify the key microstructural features for the future optimisation of continuous heat treatments of high speed steels this study compares a current industrial continuous and an isothermal heat treatment of steel HS 6-5-2 by means of light optical microscopy, scanning electron microscopy, X-ray diffraction, atom probe tomography, and red hardness. After continuous hardening the content of primary carbides is higher and the amount of retained austenite is lower compared to isothermal hardening. Due to the reduced time for dissolution of primary carbides a lower content of alloying elements is present in the martensitic matrix for subsequent tempering. Therefore, the chemical composition of the secondary hardening carbides after tempering is different for a continuous heat treatment. Although the difference in chemistry is quite pronounced, the deterioration of the hardness at elevated temperatures, which strongly influences the performance characteristics of the finished parts, is not altered. (C) 2016 Elsevier Inc. All rights reserved.
机译:高速钢的连续热处理将处理时间从几小时减少到几分钟。由此节省的成本以及较低的脱碳和变形使连续热处理优于等温热处理。然而,在连续热处理期间的微观结构与性质的关系远未得到很好的理解。为了确定未来优化高速钢连续热处理的关键显微组织特征,本研究通过光学显微镜,扫描电子显微镜比较了HS 6-5-2的当前工业连续热处理和等温热处理。 ,X射线衍射,原子探针层析成像和红色硬度。与等温淬火相比,连续淬火后一次碳化物的含量较高,而残余奥氏体的含量较低。由于减少了一次碳化物的溶解时间,因此马氏体基体中存在较低含量的合金元素,可用于后续回火。因此,回火后二次硬化碳化物的化学组成对于连续热处理是不同的。尽管化学上的差异非常明显,但不会改变高温下硬度的变差,而变质会严重影响成品零件的性能。 (C)2016 Elsevier Inc.保留所有权利。

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